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Influence of cationic and anionic additives on the electrical properties of ionophore-based ion-selective membranes

机译:阳离子和阴离子添加剂对基于离子载体的离子选择膜电性能的影响

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摘要

The steady-state electrical behavior of cation-selective ionophore membranes with different kinds of ionic additives was studied on a theoretical basis. Membranes with both mobile and fixed anionic sites exhibit nonlinear current-voltage curves, which is in contrast with the ohmic behavior of pure fixed-site membranes. This can be explained from the specific concentration profiles in the membrane, illustrating pronounced polarization effects for the mobile sites. Surprisingly, the influence of the fixed sites on the current response is still observable even when the mobile sites predominate. At high voltages, current saturation occurs by limitations of the back-diffusion of free ionophores. This can be overcome when other, uncomplexed, cations contribute to the current flow. Membranes with both cationic and anionic sites cannot be strongly polarized, in analogy to other systems where an inert electrolyte is confined to a given phase. These membranes respond with current saturation at relatively low voltages. Currents above this limit can be achieved by an additional permeation of anions from the aqueous solution through the membrane, as shown by model calculations. (c) 2005 Elsevier B.V. All rights reserved.
机译:在理论基础上研究了具有不同离子添加剂的阳离子选择性离子载体膜的稳态电学行为。具有可移动和固定阴离子位点的膜表现出非线性的电流-电压曲线,这与纯固定位膜的欧姆行为相反。这可以通过膜中的特定浓度曲线来解释,说明了移动位置的明显极化效应。令人惊讶的是,即使移动站点占主导地位,固定站点对当前响应的影响仍然可以观察到。在高电压下,由于游离离子载体的反向扩散的限制,电流饱和发生。当其他不复杂的阳离子对电流产生贡献时,可以克服这一问题。具有阳离子和阴离子位点的膜不能强极化,这类似于将惰性电解质限制在给定相的其他系统。这些膜在相对低的电压下以电流饱和响应。如模型计算所示,可通过使阴离子从水溶液中穿过膜的额外渗透来实现高于此限制的电流。 (c)2005 Elsevier B.V.保留所有权利。

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